Title :
Real-time 3-D HDTV depth cue conflict optimization
Author :
Rodrigo, J.A. ; Jimenez, Daniel ; Menendez, J.M.
Author_Institution :
Signals, Syst. & Radio Commun. Dept., UPM, Madrid, Spain
Abstract :
This paper presents a solution for inserting graphics in a 3D HDTV environment in real-time. It focuses the effort on optimizing the process of insertion in order to override depth cue conflicts between occlusion and stereoscopical disparity caused by the insertion, thus, providing a method to control the 3D QoE after the insertion. The authors propose an algorithm based on disparity estimation modified to meet the needs of this particular task. Based on Census transform disparity estimation, the introduction of reduced disparity maps and mode filters offers the possibility to increase the disparity range and achieve subjective visual improvements while keeping the amount of physical resources needed. Visual discomfort avoidance versus objective stereoscopical analysis performance is a key point of the study, because it enables the possibility of overriding heavy algorithms keeping the quality of experience at a high level. It is intended to add On Screen Displays, device or channel logos, advertising or even subtitles to a 3D HDTV workflow on a general hardware device, meaning that it can even fit on private electronic devices, not only on professional equipment.
Keywords :
hidden feature removal; high definition television; optimisation; real-time systems; stereo image processing; three-dimensional television; visual perception; 3D QoE; census transform disparity estimation; depth cue conflict optimization; inserting graphics; mode filters; occlusion disparity; on screen displays; physical resources; private electronic devices; quality of experience; real-time 3D HDTV environment; stereoscopical disparity; visual improvements; Correlation; Field programmable gate arrays; Graphics; Real time systems; Stereo vision; Three dimensional displays; Transforms; 3D High Definition Television (3D-HDTV); Census Transform; Field Programmable Gate Array (FPGA); Real-Time Video Processing; Stereo Vision;
Conference_Titel :
Consumer Electronics - Berlin (ICCE-Berlin), 2011 IEEE International Conference on
Conference_Location :
Berlin
Print_ISBN :
978-1-4577-0233-4
DOI :
10.1109/ICCE-Berlin.2011.6031882